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Thermodynamical properties of a deformed Schwarzschild black hole via Dunkl generalization

Authors
Sedaghatnia, P.Hassanabadi, H.Filho, A.A. AraújoPorfírio, P.J.Chung, W.S.
Issue Date
Mar-2025
Publisher
World Scientific Publishing Co
Keywords
Dunkl operator; gauge theory; thermodynamic properties
Citation
International Journal of Modern Physics A, v.40, no.07
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Modern Physics A
Volume
40
Number
07
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/78105
DOI
10.1142/S0217751X25500198
ISSN
0217-751X
1793-656X
Abstract
In this paper, we construct a deformed Schwarzschild black hole from the de Sitter gauge theory of gravity within Dunkl generalization and we determine the metric coefficients versus Dunkl parameter and parity operators. Since the spacetime coordinates are not affected by the group transformations, only fields are allowed to change under the action of the symmetry group. A particular ansatz for the gauge fields is chosen and the components of the strength tensor are computed as well. Additionally, we analyze the modifications on the thermodynamic properties to a spherically symmetric black hole due to Dunkl parameters for even and odd parities. Finally, we verify a novel remark highlighted from heat capacity: the appearance of a phase transition when the odd parity is taken into account. © World Scientific Publishing Company.
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